Mechanical and adhesive properties of graphene-coated thermoset and thermoplastic aircraft composite materials by physical vapor deposition technology

IF 3.2 3区 材料科学 Q2 ENGINEERING, CHEMICAL
Suat Pat , Murat Tanışlı , Mete Bakır , Adem Can Uşak
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Abstract

The remarkable properties of graphene have found widespread application across various fields, particularly in enhancing functional properties of materials. This study investigates the effects of graphene coating on thermoplastic polyphenylene sulfide (PPS) and thermoset epoxy matrix carbon-reinforced (CF) composites, with and without peel ply treatment. Graphene was applied using a thermionic vacuum arc system as physical vapor deposition technique. Characterization included contact angle measurement, ultraviolet–visible spectroscopy, atomic force microscopy, Fourier-transform infrared (FTIR) spectroscopy, cross-cut adhesion tests, and thermal imaging. The results showed that graphene coating increased the water contact angle of thermoset composites but had no significant effect on PPS composite. FTIR analysis revealed chemical changes on the surface of composite materials coated by graphene. Additionally, graphene coating did not enhance adhesion strength in thermoplastic composites, as both coated and uncoated composites exhibited a GT5 adhesion grade. However, thermoset composites, whether uncoated or graphene-coated, consistently achieved the highest adhesion grade (GT0), indicating stable adhesion properties regardless of surface treatment. Additionally, thermal camera measurements demonstrated that graphene, combined with low emissive paint, reduced the emissivity of the epoxy composite from 0.95 to 0.78 and the PPS composite from 0.90 to 0.83. The mean values of the Z-height of the filament were measured as to be 100 nm, 90 nm, and 45 nm for epoxy/CF-peel ply, epoxy/CF, and PPS/CF, respectively. Refractive index of the samples was found as 2 and 2.7 for epoxy and PPS/CF composite, respectively. The mean contact angle values were measured as 100°, 94° and 74° after the graphene coating for epoxy/CF-peel ply, epoxy/CF, and PPS/CF composite, respectively. These findings suggest that graphene coating can enhance the thermal performance of thermoset composites without significantly altering adhesion properties.
用物理气相沉积技术研究涂覆石墨烯热固性和热塑性飞机复合材料的力学和粘接性能
石墨烯的优异性能被广泛应用于各个领域,特别是在增强材料的功能性能方面。本研究研究了石墨烯涂层对热塑性聚苯硫醚(PPS)和热固性环氧基碳增强(CF)复合材料在剥离层处理和不剥离层处理下的影响。利用热离子真空电弧系统将石墨烯作为物理气相沉积技术。表征包括接触角测量、紫外-可见光谱、原子力显微镜、傅里叶变换红外(FTIR)光谱、横切粘附测试和热成像。结果表明,石墨烯涂层增加了热固性复合材料的水接触角,但对PPS复合材料没有显著影响。FTIR分析揭示了石墨烯包覆复合材料表面的化学变化。此外,石墨烯涂层并没有提高热塑性复合材料的粘附强度,因为涂层和未涂层的复合材料的粘附等级都为GT5。然而,热固性复合材料,无论是未涂覆还是涂覆石墨烯,始终达到最高的附着力等级(GT0),表明无论表面处理如何,其附着力都是稳定的。此外,热像仪测量表明,石墨烯与低发射涂料相结合,将环氧复合材料的发射率从0.95降低到0.78,将PPS复合材料的发射率从0.90降低到0.83。在环氧树脂/CF剥离层、环氧树脂/CF和PPS/CF中,长丝的z高度平均值分别为100 nm、90 nm和45 nm。环氧树脂和PPS/CF复合材料的折射率分别为2和2.7。在环氧树脂/CF-剥离层、环氧树脂/CF和PPS/CF复合材料中涂覆石墨烯后,平均接触角值分别为100°、94°和74°。这些发现表明,石墨烯涂层可以提高热固性复合材料的热性能,而不会显著改变其粘附性能。
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来源期刊
International Journal of Adhesion and Adhesives
International Journal of Adhesion and Adhesives 工程技术-材料科学:综合
CiteScore
6.90
自引率
8.80%
发文量
200
审稿时长
8.3 months
期刊介绍: The International Journal of Adhesion and Adhesives draws together the many aspects of the science and technology of adhesive materials, from fundamental research and development work to industrial applications. Subject areas covered include: interfacial interactions, surface chemistry, methods of testing, accumulation of test data on physical and mechanical properties, environmental effects, new adhesive materials, sealants, design of bonded joints, and manufacturing technology.
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